{
"$type": "site.standard.document",
"coverImage": {
"$type": "blob",
"ref": {
"$link": "bafkreic3ri5w2ivzsixsowxkyyjy6t4o2wt3fc4pwwkgjnd6x42vvysce4"
},
"mimeType": "image/png",
"size": 110266
},
"description": "Methods of measuring a thickness of a material are disclosed. An oscillating signal at a measurement frequency is applied to a circuit including an inductive component and a capacitive component provided using a pair of capacitive sensor electrodes adjacent the material. The measurement frequency…",
"path": "/patents/1279549",
"publishedAt": "2020-12-24T00:00:00.000Z",
"site": "at://did:plc:oql6ds5vnff4ugar6rruliwd/site.standard.publication/3mn3ohu7oxx5w",
"tags": [
"G01B7/087",
"Tyrata, Inc."
],
"textContent": "Methods of measuring a thickness of a material are disclosed. An oscillating signal at a measurement frequency is applied to a circuit including an inductive component and a capacitive component provided using a pair of capacitive sensor electrodes adjacent the material. The measurement frequency is less than a resonant frequency of the circuit, and the resonant frequency is based on the inductive component and the capacitive component. Information regarding a value of a measured parameter is generated based on applying the oscillating signal at the measurement frequency to the circuit. A value of the measured parameter is related to the thickness of the material.",
"title": "METHODS PROVIDING ENHANCED MATERIAL THICKNESS SENSING WITH CAPACITIVE SENSORS USING INDUCTANCE-GENERATED RESONANCE AND RELATED DEVICES"
}